A small car with mass 1810 [kg] travels at constant speed on the inside of a track that is a vertical circle with radius 9. 00 [m] (see figure on the right). The normal force exerted by the track on the car when it is at the top of the track (point B) is 7.56 x 103 [N]. B R = 9.00 [m] A. What is the normal force on the car when it is at the bottom of the track (point A)? B. What is the speed v of the car at point B?
A small car with mass 1810 [kg] travels at constant speed on the inside of a track that is a vertical circle with radius 9. 00 [m] (see figure on the right). The normal force exerted by the track on the car when it is at the top of the track (point B) is 7.56 x 103 [N]. B R = 9.00 [m] A. What is the normal force on the car when it is at the bottom of the track (point A)? B. What is the speed v of the car at point B?
University Physics Volume 1
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![A small car with mass 1810 [kg] travels at constant speed on the inside of a
track that is a vertical circle with radius 9.00 [m] (see figure on the right). The
normal force exerted by the track on the car when it is at the top of the track
(point B) is 7.56 × 103 [N].
B
R = 9.00 [m].
A. What is the normal force on the car when it is at the bottom of
the track (point A)?
B. What is the speed v of the car at point B?
A](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe3d35df2-e7de-4d6b-9002-0451843cf9be%2Fca2a3b96-53a9-4d9b-9bfc-e9e458621ce7%2Fg1h33jk_processed.png&w=3840&q=75)
Transcribed Image Text:A small car with mass 1810 [kg] travels at constant speed on the inside of a
track that is a vertical circle with radius 9.00 [m] (see figure on the right). The
normal force exerted by the track on the car when it is at the top of the track
(point B) is 7.56 × 103 [N].
B
R = 9.00 [m].
A. What is the normal force on the car when it is at the bottom of
the track (point A)?
B. What is the speed v of the car at point B?
A
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